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Regulation of minD by oxyR in Neisseria gonorrhoeae
In Neisseria gonorrhoeae, cytokinesis involves Escherichia coli homologues of minC, minD and minE which are encoded as part of a min operon. MinD, a 30 kD protein component of the MinC–MinD septum inhibitory complex, together with MinE, mediates cell division site selection. Gonococci mutated in min...
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Published in: | Research in microbiology 2013-06, Vol.164 (5), p.406-415 |
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description | In Neisseria gonorrhoeae, cytokinesis involves Escherichia coli homologues of minC, minD and minE which are encoded as part of a min operon. MinD, a 30 kD protein component of the MinC–MinD septum inhibitory complex, together with MinE, mediates cell division site selection. Gonococci mutated in minD display aberrant cytokinesis, abnormal morphology, defective microcolony formation and virulence. minD is 274 bp upstream of oxyR, another min operon gene in N. gonorrhoeae, which encodes a redox-responsive transcriptional regulator implicated in responses to oxidative stress. In this study, we aimed to examine the oxyR-mediated regulation of minD. We observed the cotranscription of oxyR with the minCDE gene cluster. The mutation of oxyR resulted in non-midline formation of the division septum, anomalous DNA segregation, and increased aggregation of bacterial cells. qRT-PCR and Western Blot analysis revealed upregulation of minD in an oxyR mutant as compared to its isogenic wild-type N. gonorrhoeae strain in stationary phase. Furthermore, the exposure to oxidative stress in the form of H2O2 increased MinD expression levels in wild-type N. gonorrhoeae. Using β-galactosidase activity-based promoter assays, we found that oxyR negatively regulates the promoter region (PminD) upstream of minD. Our results demonstrate the involvement of oxyR in cell division and minD expression in N. gonorrhoeae. |
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MinD, a 30 kD protein component of the MinC–MinD septum inhibitory complex, together with MinE, mediates cell division site selection. Gonococci mutated in minD display aberrant cytokinesis, abnormal morphology, defective microcolony formation and virulence. minD is 274 bp upstream of oxyR, another min operon gene in N. gonorrhoeae, which encodes a redox-responsive transcriptional regulator implicated in responses to oxidative stress. In this study, we aimed to examine the oxyR-mediated regulation of minD. We observed the cotranscription of oxyR with the minCDE gene cluster. The mutation of oxyR resulted in non-midline formation of the division septum, anomalous DNA segregation, and increased aggregation of bacterial cells. qRT-PCR and Western Blot analysis revealed upregulation of minD in an oxyR mutant as compared to its isogenic wild-type N. gonorrhoeae strain in stationary phase. Furthermore, the exposure to oxidative stress in the form of H2O2 increased MinD expression levels in wild-type N. gonorrhoeae. Using β-galactosidase activity-based promoter assays, we found that oxyR negatively regulates the promoter region (PminD) upstream of minD. Our results demonstrate the involvement of oxyR in cell division and minD expression in N. gonorrhoeae.</description><identifier>ISSN: 0923-2508</identifier><identifier>EISSN: 1769-7123</identifier><identifier>DOI: 10.1016/j.resmic.2013.02.002</identifier><identifier>PMID: 23434849</identifier><language>eng</language><publisher>France: Elsevier Masson SAS</publisher><subject>Adenosine Triphosphatases - biosynthesis ; Bacterial Proteins - biosynthesis ; Blotting, Western ; Gene Expression Profiling ; Gene Expression Regulation, Bacterial ; Gene Knockout Techniques ; Hydrogen Peroxide - toxicity ; min operon ; minD ; Neisseria gonorrhoeae ; Neisseria gonorrhoeae - drug effects ; Neisseria gonorrhoeae - genetics ; Neisseria gonorrhoeae - metabolism ; Neisseria gonorrhoeae - physiology ; Oxidative Stress ; oxyR ; Real-Time Polymerase Chain Reaction ; Repressor Proteins - genetics ; Repressor Proteins - metabolism</subject><ispartof>Research in microbiology, 2013-06, Vol.164 (5), p.406-415</ispartof><rights>2013</rights><rights>Crown Copyright © 2013. Published by Elsevier Masson SAS. All rights reserved.</rights><lds50>peer_reviewed</lds50><oa>free_for_read</oa><woscitedreferencessubscribed>false</woscitedreferencessubscribed><citedby>FETCH-LOGICAL-c432t-c66e73c0416343b685d91fff90fde6dcc537ca1ad24cdb81bec6c25c28dd12dc3</citedby><cites>FETCH-LOGICAL-c432t-c66e73c0416343b685d91fff90fde6dcc537ca1ad24cdb81bec6c25c28dd12dc3</cites></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><link.rule.ids>314,780,784,27924,27925</link.rule.ids><backlink>$$Uhttps://www.ncbi.nlm.nih.gov/pubmed/23434849$$D View this record in MEDLINE/PubMed$$Hfree_for_read</backlink></links><search><creatorcontrib>Parti, Rajinder P.</creatorcontrib><creatorcontrib>Horbay, Monique A.</creatorcontrib><creatorcontrib>Liao, Mingmin</creatorcontrib><creatorcontrib>Dillon, Jo-Anne R.</creatorcontrib><title>Regulation of minD by oxyR in Neisseria gonorrhoeae</title><title>Research in microbiology</title><addtitle>Res Microbiol</addtitle><description>In Neisseria gonorrhoeae, cytokinesis involves Escherichia coli homologues of minC, minD and minE which are encoded as part of a min operon. MinD, a 30 kD protein component of the MinC–MinD septum inhibitory complex, together with MinE, mediates cell division site selection. Gonococci mutated in minD display aberrant cytokinesis, abnormal morphology, defective microcolony formation and virulence. minD is 274 bp upstream of oxyR, another min operon gene in N. gonorrhoeae, which encodes a redox-responsive transcriptional regulator implicated in responses to oxidative stress. In this study, we aimed to examine the oxyR-mediated regulation of minD. We observed the cotranscription of oxyR with the minCDE gene cluster. The mutation of oxyR resulted in non-midline formation of the division septum, anomalous DNA segregation, and increased aggregation of bacterial cells. qRT-PCR and Western Blot analysis revealed upregulation of minD in an oxyR mutant as compared to its isogenic wild-type N. gonorrhoeae strain in stationary phase. Furthermore, the exposure to oxidative stress in the form of H2O2 increased MinD expression levels in wild-type N. gonorrhoeae. Using β-galactosidase activity-based promoter assays, we found that oxyR negatively regulates the promoter region (PminD) upstream of minD. Our results demonstrate the involvement of oxyR in cell division and minD expression in N. gonorrhoeae.</description><subject>Adenosine Triphosphatases - biosynthesis</subject><subject>Bacterial Proteins - biosynthesis</subject><subject>Blotting, Western</subject><subject>Gene Expression Profiling</subject><subject>Gene Expression Regulation, Bacterial</subject><subject>Gene Knockout Techniques</subject><subject>Hydrogen Peroxide - toxicity</subject><subject>min operon</subject><subject>minD</subject><subject>Neisseria gonorrhoeae</subject><subject>Neisseria gonorrhoeae - drug effects</subject><subject>Neisseria gonorrhoeae - genetics</subject><subject>Neisseria gonorrhoeae - metabolism</subject><subject>Neisseria gonorrhoeae - physiology</subject><subject>Oxidative Stress</subject><subject>oxyR</subject><subject>Real-Time Polymerase Chain Reaction</subject><subject>Repressor Proteins - genetics</subject><subject>Repressor Proteins - metabolism</subject><issn>0923-2508</issn><issn>1769-7123</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2013</creationdate><recordtype>article</recordtype><recordid>eNp9kMtOwzAQRS0EoqXwBwiyZJPgR-IkGyRUnhICicfacsaT4qqJi90i-vcYpbBkNZtz7x0dQo4ZzRhl8nyeeQydhYxTJjLKM0r5DhmzUtZpybjYJWNac5HyglYjchDCnFJWlGW-T0Zc5CKv8npMxDPO1gu9sq5PXJt0tr9Kmk3ivjbPie2TR7QhoLc6mbneef_uUOMh2Wv1IuDR9k7I28316_QufXi6vZ9ePqSQC75KQUosBdCcyTjXyKowNWvbtqatQWkAClGCZtrwHExTsQZBAi-AV8YwbkBMyNnQu_TuY41hpTobABcL3aNbB8WELOqas1pENB9Q8C4Ej61aettpv1GMqh9daq4GXepHl6JcRV0xdrJdWDcdmr_Qr58InA5Aq53SM2-DenuJDTK6LEsuikhcDARGE58WvQpgsQc01iOslHH2_x--ATnLhjI</recordid><startdate>20130601</startdate><enddate>20130601</enddate><creator>Parti, Rajinder P.</creator><creator>Horbay, Monique A.</creator><creator>Liao, Mingmin</creator><creator>Dillon, Jo-Anne R.</creator><general>Elsevier Masson SAS</general><scope>FBQ</scope><scope>CGR</scope><scope>CUY</scope><scope>CVF</scope><scope>ECM</scope><scope>EIF</scope><scope>NPM</scope><scope>AAYXX</scope><scope>CITATION</scope><scope>7X8</scope></search><sort><creationdate>20130601</creationdate><title>Regulation of minD by oxyR in Neisseria gonorrhoeae</title><author>Parti, Rajinder P. ; Horbay, Monique A. ; Liao, Mingmin ; Dillon, Jo-Anne R.</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c432t-c66e73c0416343b685d91fff90fde6dcc537ca1ad24cdb81bec6c25c28dd12dc3</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2013</creationdate><topic>Adenosine Triphosphatases - biosynthesis</topic><topic>Bacterial Proteins - biosynthesis</topic><topic>Blotting, Western</topic><topic>Gene Expression Profiling</topic><topic>Gene Expression Regulation, Bacterial</topic><topic>Gene Knockout Techniques</topic><topic>Hydrogen Peroxide - toxicity</topic><topic>min operon</topic><topic>minD</topic><topic>Neisseria gonorrhoeae</topic><topic>Neisseria gonorrhoeae - drug effects</topic><topic>Neisseria gonorrhoeae - genetics</topic><topic>Neisseria gonorrhoeae - metabolism</topic><topic>Neisseria gonorrhoeae - physiology</topic><topic>Oxidative Stress</topic><topic>oxyR</topic><topic>Real-Time Polymerase Chain Reaction</topic><topic>Repressor Proteins - genetics</topic><topic>Repressor Proteins - metabolism</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Parti, Rajinder P.</creatorcontrib><creatorcontrib>Horbay, Monique A.</creatorcontrib><creatorcontrib>Liao, Mingmin</creatorcontrib><creatorcontrib>Dillon, Jo-Anne R.</creatorcontrib><collection>AGRIS</collection><collection>Medline</collection><collection>MEDLINE</collection><collection>MEDLINE (Ovid)</collection><collection>MEDLINE</collection><collection>MEDLINE</collection><collection>PubMed</collection><collection>CrossRef</collection><collection>MEDLINE - Academic</collection><jtitle>Research in microbiology</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Parti, Rajinder P.</au><au>Horbay, Monique A.</au><au>Liao, Mingmin</au><au>Dillon, Jo-Anne R.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Regulation of minD by oxyR in Neisseria gonorrhoeae</atitle><jtitle>Research in microbiology</jtitle><addtitle>Res Microbiol</addtitle><date>2013-06-01</date><risdate>2013</risdate><volume>164</volume><issue>5</issue><spage>406</spage><epage>415</epage><pages>406-415</pages><issn>0923-2508</issn><eissn>1769-7123</eissn><abstract>In Neisseria gonorrhoeae, cytokinesis involves Escherichia coli homologues of minC, minD and minE which are encoded as part of a min operon. MinD, a 30 kD protein component of the MinC–MinD septum inhibitory complex, together with MinE, mediates cell division site selection. Gonococci mutated in minD display aberrant cytokinesis, abnormal morphology, defective microcolony formation and virulence. minD is 274 bp upstream of oxyR, another min operon gene in N. gonorrhoeae, which encodes a redox-responsive transcriptional regulator implicated in responses to oxidative stress. In this study, we aimed to examine the oxyR-mediated regulation of minD. We observed the cotranscription of oxyR with the minCDE gene cluster. The mutation of oxyR resulted in non-midline formation of the division septum, anomalous DNA segregation, and increased aggregation of bacterial cells. qRT-PCR and Western Blot analysis revealed upregulation of minD in an oxyR mutant as compared to its isogenic wild-type N. gonorrhoeae strain in stationary phase. Furthermore, the exposure to oxidative stress in the form of H2O2 increased MinD expression levels in wild-type N. gonorrhoeae. Using β-galactosidase activity-based promoter assays, we found that oxyR negatively regulates the promoter region (PminD) upstream of minD. Our results demonstrate the involvement of oxyR in cell division and minD expression in N. gonorrhoeae.</abstract><cop>France</cop><pub>Elsevier Masson SAS</pub><pmid>23434849</pmid><doi>10.1016/j.resmic.2013.02.002</doi><tpages>10</tpages><oa>free_for_read</oa></addata></record> |
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subjects | Adenosine Triphosphatases - biosynthesis Bacterial Proteins - biosynthesis Blotting, Western Gene Expression Profiling Gene Expression Regulation, Bacterial Gene Knockout Techniques Hydrogen Peroxide - toxicity min operon minD Neisseria gonorrhoeae Neisseria gonorrhoeae - drug effects Neisseria gonorrhoeae - genetics Neisseria gonorrhoeae - metabolism Neisseria gonorrhoeae - physiology Oxidative Stress oxyR Real-Time Polymerase Chain Reaction Repressor Proteins - genetics Repressor Proteins - metabolism |
title | Regulation of minD by oxyR in Neisseria gonorrhoeae |
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